Department of Smart Manufacturing Engineering, Changwon National University, Changwon, 51140, Republic of Korea.
Advanced Joining and Additive Manufacturing R&D Department, Korea Institute of Industrial Technology, 156 Gaetbeol-Ro (Songdo-Dong), Yeonsu-Gu, Incheon, 21999, Republic of Korea.
Sci Rep. 2022 Nov 3;12(1):18637. doi: 10.1038/s41598-022-23299-2.
Tandem welding is extensively used for welding large structures, such as ships and plants, for increased welding speed and volume. Seam tracking is essential because of a large amount of thermal deformation. However, in tandem welding, arc interference causes current and voltage to vary non-uniformly, leading to difficulties in seam tracking. Therefore, in this study, an optimal signal was identified for seam tracking in tandem welding and evaluated. To select the seam-tracking signal, an algorithm was developed that separates the welding signal into peak, average, and base. Based on the collected data, regression and signal-to-noise ratio analyses were performed to identify a suitable seam-tracking signal. To trace the welding line based on the selected signal, the welding signal was checked by weaving on the V-groove specimen. As a result, the current area difference of the welding signal generated between the left and right parts of the center of the V-groove could be calculated. An algorithm and equipment for seam tracking were constructed using the area difference of the welding current. Finally, the seam tracking system was verified by conducting an actual test using the equipment to which the algorithm was applied.
双面焊接被广泛应用于焊接大型结构,如船舶和工厂,以提高焊接速度和焊接量。由于大量的热变形,焊缝跟踪是必不可少的。然而,在双面焊接中,电弧干扰会导致电流和电压不均匀变化,导致焊缝跟踪困难。因此,在这项研究中,我们确定并评估了双面焊接中用于焊缝跟踪的最佳信号。为了选择焊缝跟踪信号,我们开发了一种算法,将焊接信号分为峰值、平均值和基础值。根据收集的数据,我们进行了回归和信噪比分析,以确定合适的焊缝跟踪信号。为了根据所选信号跟踪焊接线,我们在 V 型坡口试样上进行了编织,以检查焊接信号。结果,可以计算出在 V 型坡口中心左右两侧产生的焊接信号的电流面积差。使用焊接电流的面积差,我们构建了焊缝跟踪的算法和设备。最后,通过使用该算法的设备进行实际测试,验证了焊缝跟踪系统。